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Nuclear power plant non-security-level DCS configuration testing method and system

A non-safety-level, test-method technology, applied in general control systems, control/regulation systems, and comprehensive factory control, etc., can solve problems such as equipment malfunction, inability to meet projects, occupation, etc., to reduce equipment damage and shorten engineering Concise effect of construction period and network structure

Active Publication Date: 2015-09-09
中广核工程有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

During the test, it is necessary to bring physical equipment into action. If there is a problem with the DCS configuration, many unexpected situations such as equipment misoperation and refusal to operate are likely to occur, which brings a great risk of damage to the equipment and also brings great harm to the test personnel. personal safety risk
[0006] 2. Long construction period
The test work needs to wait for the on-site equipment, signal cables, and DCS platform to be available. However, at present, the availability of equipment in nuclear power projects is generally far behind that of the DCS platform, and the idle test window cannot be fully utilized.
[0007] 3. High cost
This method needs to be connected and communicated with the DCS of the power plant through hard wiring, and is limited by the number of temporary test cables, the scale of test IO cards, and the cost of testing. This DCS configuration test method cannot cover the entire plant.
[0010] 2. Limitations of batching
Due to the limited number of test devices and test personnel, the official IO channel needs to be occupied during each test, and the transfer of the test platform and the laying and termination of test cables require a lot of manpower and material resources. Facing the batch construction of the project, it is impossible Meet the needs of the project
[0011] 3. High cost
The full-range simulator is mainly for the training of operating operators. Therefore, its test objects are mainly operating procedures and human-computer interaction screen configuration. The testers are generally simulator suppliers, operating operators, simulator instructors, and simulators. The test plan lacks the participation of professional commissioning personnel for unit performance testing
[0014] 2. The reference value of the test results of the simulator is not high
Due to the lack of professional commissioning personnel participating in the overall performance evaluation of the unit, during the commissioning period, it is necessary to perform many commissioning tests, adjust the overall control and protection parameters of the unit, and optimize the performance of the unit during commissioning. However, due to the difference in professional division of labor, the entire scope The test of the simulator greatly discounts the reference value of the real unit
[0015] 3. High cost
The full-range simulator needs to be used to simulate the real main control room, which is completely configured according to the actual ratio of one to one, and the equipment used is exactly the same as the real equipment. The cost is too expensive, which is unacceptable for the cost of control engineering

Method used

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  • Nuclear power plant non-security-level DCS configuration testing method and system
  • Nuclear power plant non-security-level DCS configuration testing method and system
  • Nuclear power plant non-security-level DCS configuration testing method and system

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Embodiment 1

[0050] This embodiment provides a non-safety level DCS configuration test system for nuclear power plants based on the combination of virtual DCS (Digital Instrument Control System) technology and nuclear power simulation technology, which is used to simulate the operating environment of a real nuclear power plant , collect various operating data generated during the simulated operation of the nuclear power unit, analyze various abnormalities in the simulated operation of the nuclear power unit according to the operating data of the nuclear power unit, and set the relevant setting parameters in the DCS configuration file according to the abnormal operation of the nuclear power unit According to the corresponding modification, the nuclear power unit is controlled according to the modified DCS configuration file to ensure the safe and stable operation of the nuclear power unit.

[0051] The following will combine Figure 1 to Figure 3 The structure of the non-safety level DCS co...

Embodiment 2

[0064] This embodiment provides a non-safety level DCS configuration test method for nuclear power plants based on the combination of virtual DCS technology and nuclear power simulation technology, and its processing flow is as follows Figure 4 As shown, the following processing steps are included:

[0065] Step 102: Build a nuclear power plant simulation model 200 including a simulation model server 201 and a nuclear power plant console 203 according to the model of the nuclear power unit, and select a virtual DCS platform 100 that matches the nuclear power unit simulation model to remotely control the nuclear power plant simulation model 200.

[0066] Step 102 , the operator of the non-safety DCS configuration test system of the nuclear power plant sets the initial operating parameters of the nuclear power unit on the console 203 of the nuclear power plant, and starts the simulation model server 201 according to the initial operating parameters of the nuclear power unit.

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Abstract

The invention discloses a nuclear power plant non-security-level DCS configuration testing method and system comprising a virtual DCS platform and a nuclear power station simulating model coupled to the virtual DCS platform. The nuclear power station simulating model is used for, according to a nuclear power unit operation control instruction given by the virtual DCS platform, simulating the operation of a real nuclear power station, acquiring the operating data of the nuclear power unit, and returning the acquired data to the virtual DCS platform. The virtual DCS platform is used for, according to the operating data of the nuclear power unit, computing and analyzing the operating condition of the nuclear power unit in real time, evaluating a difference between an analyzed result and a designed operating condition, determining the correctness and the rationality of DCS configuration logic and parameters, giving corresponding logic modification and parameter optimization, and transplanting and applying a tested and modified result to the DCS configuration of a real nuclear power unit. The nuclear power plant non-security-level DCS configuration testing method and system may reduce the investment cost of the nuclear power station, shorten the construction period of nuclear power engineering, and decrease equipment loss.

Description

technical field [0001] The invention relates to the technical field of nuclear power plant operation detection, and more specifically relates to a non-safety level DCS configuration test method and system for a nuclear power plant. Background technique [0002] At present, the newly-built nuclear power units in the world have adopted the digital instrument control system (DCS for short) to realize the centralized monitoring, remote control and protection of the whole process of the plant. Nuclear power DCS configuration covers a wide range, has many functions, and the linkage relationship between various process subsystems is close. The risk of nuclear power unit commissioning and start-up is high. Therefore, the correctness of DCS configuration design is particularly important for nuclear power unit commissioning and commissioning safety. important. [0003] At present, the known nuclear power DCS configuration testing methods include on-site testing methods, testing metho...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G05B19/418
CPCG05B19/4188Y02P90/02
Inventor 李贤民仇少帅时小龙栾振华杨宗伟杨砚雄
Owner 中广核工程有限公司
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